학술논문

Fine-mapping of prostate cancer susceptibility loci in a large meta-analysis identifies candidate causal variants
Document Type
article
Author
Dadaev, TokhirSaunders, Edward JNewcombe, Paul JAnokian, EzequielLeongamornlert, Daniel ABrook, Mark NCieza-Borrella, ClaraMijuskovic, MartinaWakerell, SarahOlama, Ali Amin AlSchumacher, Fredrick RBerndt, Sonja IBenlloch, SaraAhmed, MahbublGoh, CheeSheng, XinZhang, ZhuoMuir, KennethGovindasami, KoveelaLophatananon, ArtitayaStevens, Victoria LGapstur, Susan MCarter, Brian DTangen, Catherine MGoodman, PhyllisThompson, Ian MBatra, JyotsnaChambers, SuzanneMoya, LeireClements, JudithHorvath, LisaTilley, WayneRisbridger, GailGronberg, HenrikAly, MarkusNordström, TobiasPharoah, PaulPashayan, NoraSchleutker, JohannaTammela, Teuvo LJSipeky, CsillaAuvinen, AnssiAlbanes, DemetriusWeinstein, StephanieWolk, AlicjaHakansson, NiclasWest, CatharineDunning, Alison MBurnet, NeilMucci, LoreleiGiovannucci, EdwardAndriole, GeraldCussenot, OlivierCancel-Tassin, GéraldineKoutros, StellaFreeman, Laura E BeaneSorensen, Karina DalsgaardOrntoft, Torben FalckBorre, MichaelMaehle, LoviseGrindedal, Eli MarieNeal, David EDonovan, Jenny LHamdy, Freddie CMartin, Richard MTravis, Ruth CKey, Tim JHamilton, Robert JFleshner, Neil EFinelli, AntonioIngles, Sue AnnStern, Mariana CRosenstein, BarryKerns, SarahOstrer, HarryLu, Yong-JieZhang, Hong-WeiFeng, NinghanMao, XueyingGuo, XinWang, GuominSun, ZanGiles, Graham GSouthey, Melissa CMacInnis, Robert JFitzGerald, Liesel MKibel, Adam SDrake, Bettina FVega, AnaGómez-Caamaño, AntonioFachal, LauraSzulkin, RobertEklund, MartinKogevinas, ManolisLlorca, JavierCastaño-Vinyals, GemmaPenney, Kathryn LStampfer, MeirPark, Jong YSellers, Thomas A
Source
Nature Communications. 9(1)
Subject
Genetics
Aging
Urologic Diseases
Prostate Cancer
Prevention
Human Genome
Cancer
Clinical Research
2.1 Biological and endogenous factors
Aetiology
Algorithms
Bayes Theorem
Black People
Chromosome Mapping
Genetic Predisposition to Disease
Genome-Wide Association Study
Humans
Male
Molecular Sequence Annotation
Multivariate Analysis
Polymorphism
Single Nucleotide
Prostatic Neoplasms
Quantitative Trait Loci
Risk
White People
PRACTICAL (Prostate Cancer Association Group to Investigate Cancer-Associated Alterations in the Genome) Consortium
Language
Abstract
Prostate cancer is a polygenic disease with a large heritable component. A number of common, low-penetrance prostate cancer risk loci have been identified through GWAS. Here we apply the Bayesian multivariate variable selection algorithm JAM to fine-map 84 prostate cancer susceptibility loci, using summary data from a large European ancestry meta-analysis. We observe evidence for multiple independent signals at 12 regions and 99 risk signals overall. Only 15 original GWAS tag SNPs remain among the catalogue of candidate variants identified; the remainder are replaced by more likely candidates. Biological annotation of our credible set of variants indicates significant enrichment within promoter and enhancer elements, and transcription factor-binding sites, including AR, ERG and FOXA1. In 40 regions at least one variant is colocalised with an eQTL in prostate cancer tissue. The refined set of candidate variants substantially increase the proportion of familial relative risk explained by these known susceptibility regions, which highlights the importance of fine-mapping studies and has implications for clinical risk profiling.